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Translation of HDAC6 PET Imaging Using [

Authors :
Sofie, Celen
Johanna, Rokka
Tonya M, Gilbert
Michel, Koole
Isabeau, Vermeulen
Kim, Serdons
Frederick A, Schroeder
Florence F, Wagner
Tom, Bleeser
Baileigh G, Hightower
Jiyun, Hu
Dania, Rahal
Hudson, Beyzavi
Wim, Vanduffel
Koen, Van Laere
Janice E, Kranz
Jacob M, Hooker
Guy, Bormans
Christopher J, Cawthorne
Source :
ACS Chem Neurosci
Publication Year :
2020

Abstract

Histone deacetylase 6 (HDAC6) is a multifunctional cytoplasmic enzyme involved in diverse cellular processes such as intracellular transport and protein quality control. Inhibition of HDAC6 can alleviate defects in cell and rodent models of certain diseases, particularly neurodegenerative disorders, including Alzheimer’s disease and amyotrophic lateral sclerosis. However, while HDAC6 represents a potentially powerful therapeutic target, development of effective brain-penetrant HDAC6 inhibitors remains challenging. Recently [(18)F]EKZ-001 ([(18)F]Bavarostat), a brain-penetrant positron emission tomography (PET) radioligand with high affinity and selectivity towards HDAC6, was developed and evaluated preclinically for its ability to bind HDAC6. Herein, we describe the efficient and robust fully automated current good manufacturing practices (cGMP) compliant production method. [(18)F]EKZ-001 quantification methods were validated in non-human primates (NHP) using full kinetic modelling and [(18)F]EKZ-001 PET was applied to compare dose-occupancy relationships between two HDAC6 inhibitors, EKZ-317 and ACY-775. [(18)F]EKZ-001 is cGMP produced with an average decay-corrected radiochemical yield of 14 % and an average molar activity of 204 GBq/μmol. We demonstrate that a two-tissue compartmental model and Logan graphical analysis are appropriate for [(18)F]EKZ-001 PET quantification in NHP brain. Blocking studies show that the novel compound, EKZ-317, achieves higher target occupancy than ACY-775. This work supports the translation of [(18)F]EKZ-001 PET for first-in-human studies.

Details

ISSN :
19487193
Volume :
11
Issue :
7
Database :
OpenAIRE
Journal :
ACS chemical neuroscience
Accession number :
edsair.pmid..........47c892a6204a010705ac5890413d85dc